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Samuel D Snow

Explore the profile of Samuel D Snow including associated specialties, affiliations and a list of published articles. Areas
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Articles 9
Citations 14
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Recent Articles
1.
Allam O, Maghsoodi M, Jang S, Snow S
ACS Appl Mater Interfaces . 2024 Jul; 16(28):36215-36223. PMID: 38953235
The efficient harnessing of solar power for water treatment via photocatalytic processes has long been constrained by the challenge of understanding and optimizing the interactions at the photocatalyst surface, particularly...
2.
Willis D, Sheets E, Worbington M, Kamat M, Glass S, Caso M, et al.
ACS ES T Eng . 2023 Nov; 3(11):1694-1705. PMID: 37969427
Photocatalytic advanced oxidation processes (AOPs) promise a chemical-free route to energy-efficient degradation of waterborne micropollutants if long-standing mass transfer and light management issues can be overcome. Herein, we developed a...
3.
Maghsoodi M, Jacquin C, Teychene B, Lesage G, Snow S
Langmuir . 2023 Feb; 39(10):3752-3761. PMID: 36745071
In the face of significant challenges to practical applications of photocatalysis for water treatment, recent reports revealed a potential route to overcome a problem posed by dissolved organic matter (DOM)....
4.
Kamat M, Moor K, Langlois G, Chen M, Parker K, McNeill K, et al.
ACS Nano . 2022 May; 16(5):8309-8317. PMID: 35533084
Fullerene's low water solubility was a serious challenge to researchers aiming to harness their excellent photochemical properties for aqueous applications. Cationic functionalization of the fullerene cage provided the most effective...
5.
Moor K, Snow S, Kim J
Environ Sci Technol . 2015 May; 49(10):5990-8. PMID: 25950275
Many past studies have focused on the aqueous photochemical properties of colloidal suspensions of C60 and various [C60] fullerene derivatives, yet few have investigated the photochemistry of other larger cage...
6.
Snow S, Kim K, Moor K, Jang S, Kim J
Environ Sci Technol . 2015 Jan; 49(4):2147-55. PMID: 25632831
The excellent photophysical properties of C60 fullerenes have spurred much research on their application to aqueous systems for biological and environmental applications. Spontaneous aggregation of C60 in water and the...
7.
Il Choi J, Snow S, Kim J, Jang S
Environ Sci Technol . 2015 Jan; 49(3):1529-36. PMID: 25602529
The nature of fullerene-water interactions has been the subject of much research and debate. Specifically, the presence of a stabilizing, negative surface potential on colloidal aggregates of C60 in water...
8.
Snow S, Lee J, Kim J
Environ Sci Technol . 2012 Nov; 46(24):13227-34. PMID: 23151050
The vast range of C₆₀ derivatives makes it difficult to assess the potential environmental impact of this class of materials, while past environmental studies mostly focused only on pristine C₆₀....
9.
Cho M, Snow S, Hughes J, Kim J
Environ Sci Technol . 2011 Oct; 45(22):9627-33. PMID: 21999435
Motivated by recent studies that documented changes in fullerene toxicity after chemical transformation, C(60) aggregates (nC(60)) were subject to UVC irradiation at monochromatic 254 nm and subsequently evaluated for antibacterial...